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Capacitive Control of Spontaneously Induced Electrical Charge of Droplet by Electric Field-Assisted Pipetting

机译:电场辅助移液对液滴自发感应电荷的电容控制

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摘要

The spontaneously generated electrical charge of a droplet dispensed from conventional pipetting is undesirable and unpredictable for most experiments that use pipetting.Hence,a method for controlling and removing the electrical charge needs to be developed.In this study,by using the electrode-deposited pipet tip(E-pipet tip),the charge-controlling system is newly developed and the electrical charge of a droplet is precisely controlled.The effect of electrolyte concentration and volume of the transferred solution to the electrical charge of a dispensed droplet is theoretically and experimentally investigated by using the equivalent capacitor model.Furthermore,a proof-of-concept example of the self-alignment and self-assembly of sequentially dispensed multiple droplets is demonstrated as one of the potential applications.Given that the electrical charge of the various aqueous droplets can be precisely and simply controlled,the fabricated E-pipet tip can be broadly utilized not only as a general charge-controlling platform of aqueous droplets but also as a powerful tool to explore fundamental scientific research regarding electrical charge of a droplet,such as the surface oscillation and evaporation of charged droplets.
机译:对于大多数使用移液的实验,从常规移液中散发的液滴自发产生的电荷是不可取的且不可预测的。因此,需要开发一种控制和去除电荷的方法。在本研究中,使用电极沉积的移液尖端(E-移液器尖端),新开发的电荷控制系统可精确控制液滴的电荷。从理论上和实验上,研究电解质浓度和转移溶液的体积对所分配液滴的电荷的影响此外,还提出了依次分配的多个液滴的自对准和自组装的概念验证示例,作为其潜在的应用之一。鉴于各种液滴的电荷可以精确,简单地控制,制成的电子吸头不仅可以广泛地用作通用的水滴电荷控制平台,也是探索液滴电荷的基础科学研究(例如带电液滴的表面振荡和蒸发)的有力工具。

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  • 来源
    《纳微快报:英文版》 |2015年第004期|P.341-346|共6页
  • 作者单位

    Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH);

    Analysis Science & Engineering Team, Semiconductor R&D Center, Samsung Electronics Co., Ltd.;

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  • 入库时间 2022-08-19 04:06:21
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